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Titlebook: Comparative Molecular Neurobiology; Yves Pichon Book 1993 Birkhäuser Verlag 1993 conservation.evolution.membrane proteins.molecular biolog

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Molecular studies on insect octopamine receptorsthe vertebrate sympathetic nervous system. Molecular studies on insect octopamine receptors have concentrated upon molecular pharmacological approaches to identify the particular subtype of octopamine receptor mediating its effects in a particular tissue and on the modes of action of the receptors i
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Bioamine receptors: Evolutionary and functional variations of a structural leitmotiven spanning membrane receptors. This class of receptors transmits the effect of agonist binding to intracellular effectors by interacting with an intermediary G-protein. The diversity of receptor subtypes inside the protein family, observed in many animal species, is the result of a long evolutionar
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Molecular basis of K+ channel inactivation gatinged transmembrane segment, has been identified. Movement in the membrane electric field of the charged S4 is thought to precede the opening and closing of the activation gate. The physical basis of the conformational changes involved in gating has yet to be elucidated. Here, we discuss a domain that
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The major lines of metazoan evolution: Summary of traditional evidence and lessons from ribosomal RN .; Echinodermata: the various sea urchins, both extensively used models in developmental biology; Annelida and Platyhelminthes, classical organisms for the study of embryology and regeneration, etc.). As illustrated in detail in books recently devoted to the subject (Barnes, 1987; Brusca and Brusca
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Heterologous expression of the membrane proteins that control cellular excitability, neurotransmitter receptors and other excitability proteins in many cell lines and postmitotic cells in culture. W vectors promise to be particularly useful to study membrane proteins that require posttranslational processing, association with cell-specific subunits or coupling to endogenous second
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